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针对C1q“臂”的单克隆抗体研究支持的补体成分C1激活的扭曲机制。

The distortive mechanism for the activation of complement component C1 supported by studies with a monoclonal antibody against the "arms" of C1q.

作者信息

Hoekzema R, Martens M, Brouwer M C, Hack C E

机构信息

Central Laboratory, Netherlands Red Cross Blood Transfusion Service, University of Amsterdam.

出版信息

Mol Immunol. 1988 May;25(5):485-94. doi: 10.1016/0161-5890(88)90169-1.

Abstract

A mouse monoclonal antibody (IgG1 isotype) against human C1q (MAb 130) is presented that activates C1 in serum through its antigen-binding sites at an optimal molar ratio of 3 MAbs:1 C1q. The antibody does not inhibit binding of C1q to IgG. Experiments with pepsin- and collagenase-digested C1q showed that MAb 130 binds to the fibril-like strands (arms) of C1q, close to the globular heads. Bivalency of MAb 130 was a requirement for C1-activation, but not for binding to C1q. Increasing the segmental flexibility of the intact antibody by reduction and alkylation destroyed its capacity to activate C1. A MAb against the globular heads of C1q completely inhibited C1-activation by aggregated IgG (AHG), but did not prevent activation by MAb 130. C1, reconstituted by adding C1q-stalks that lack the globular heads to C1q-depleted serum was not activated by AHG, whereas activation by MAb 130 was not affected. Activation of serum-C1 by AHG and MAb 130 was inhibited by addition of excess purified C1-inhibitor in a comparable and dose-dependent manner. Sucrose-gradient analysis indicated a predominance of stable complexes of a single C1q-molecule with three MAbs at the optimal activating ratio. When isolated and added to C1q-depleted serum, these complexes activated C1 efficiently. A mechanism for activation by MAb 130 is proposed that supports the "distortive" model of C1-activation.

摘要

本文介绍了一种针对人C1q的小鼠单克隆抗体(IgG1亚型,MAb 130),该抗体通过其抗原结合位点以3个单克隆抗体:1个C1q的最佳摩尔比激活血清中的C1。该抗体不抑制C1q与IgG的结合。用胃蛋白酶和胶原酶消化C1q的实验表明,MAb 130结合在C1q的纤维状链(臂)上,靠近球形头部。MAb 130的二价性是C1激活的必要条件,但不是与C1q结合的必要条件。通过还原和烷基化增加完整抗体的片段柔韧性会破坏其激活C1的能力。一种针对C1q球形头部的单克隆抗体完全抑制了聚集IgG(AHG)激活C1,但不阻止MAb 130激活C1。向C1q缺失的血清中添加缺乏球形头部的C1q茎来重构的C1,不会被AHG激活,而MAb 130的激活不受影响。添加过量纯化的C1抑制剂以类似且剂量依赖的方式抑制了AHG和MAb 130对血清C1的激活。蔗糖梯度分析表明,在最佳激活比例下,单个C1q分子与三个单克隆抗体的稳定复合物占主导。当分离并添加到C1q缺失的血清中时,这些复合物能有效激活C1。本文提出了MAb 130激活C1的机制,该机制支持C1激活的“扭曲”模型。

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